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Study on the Vibration Suppression Method of Urban Railway Vehicles Based on a Composite Dynamic Vibration Absorber

机译:基于复合动力减振器的城市轨道车辆减振方法研究

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To reduce the bounce and the pitch vibration of carbody, a vertical dynamic model for urban rail vehicles is established to analyze the vibration response of the carbody in the low frequency range. In this paper, different methods of single-degree-of-freedom dynamic vibration absorber to suppress the vibration for carbody are investigated. The limits of single-degree-of-freedom dynamic vibration absorber to the vibration reduction effect of carbody are pointed out. After that, the design of a composite dynamic vibration absorber including a double oscillator structure is introduced. A vibration discreteness index is used to evaluate dynamic vibration absorbers with various designs for the vibration damping performance. Finally, the vibration reduction performance of the composite dynamic vibration absorber is verified by Sperling’s riding index. The results demonstrate that the performance of the single degree of freedom dynamic vibration absorber attached to a carbody may increase the vibration within a partial scope, when the peak frequency of vibration is far away from the design frequency. The installation of the composite dynamic vibration absorber vibration provides gentler running experience for passengers.
机译:为了减少车身的反弹和俯仰振动,建立了城市轨道车辆的垂直动力学模型,以分析车身在低频范围内的振动响应。本文研究了不同的单自由度动态减振器抑制车身振动的方法。指出了单自由度动态减振器对车身减振效果的限制。此后,介绍了包括双振荡器结构的复合动态吸振器的设计。振动离散指数用于评估具有各种设计的减振性能的动态吸振器。最后,复合动力减震器的减震性能已通过Sperling的骑行指数得到验证。结果表明,当振动的峰值频率远离设计频率时,连接到车身的单自由度动态吸振器的性能可能会在部分范围内增加振动。复合动态减震器的安装为乘客提供了更柔和的行驶体验。

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